(二)帕米尔及邻区形变观测相关研究文章列表

Bilotti, F., Shaw, J.H., Brennan, P.A. (2000). Quantitative Structural Analysis with Stereoscopic Remote Sensing Imagery. AAPG Bulletin, 84(6), 727–740.

Ge, W.-P., Molnar, P., Shen, Z.-K., & Li, Q. (2015). Present-day crustal thinning in the southern and northern Tibetan Plateau revealed by GPS measurements. Geophysical Research Letters, 42(13), 5227-5235.

Ischuk, A., Bendick, R., Rybin, A., Molnar, P., Khan, S. F., Kuzikov, S., Mohadjer, S., Saydullaev, U., Ilyasova, Z., Schelochkov, G., & Zubovich, A. V. (2013). Kinematics of the Pamir and Hindu Kush regions from GPS geodesy. Journal of Geophysical Research: Solid Earth, 118(5), 2408-2416.

Koehler, R. D., & Wesnousky, S. G. (2011). Late Pleistocene regional extension rate derived from earthquake geology of late Quaternary faults across the Great Basin, Nevada, between 38.5 N and 40 N latitude. GSA Bulletin, 123(3-4), 631-650.

Kreemer, C., Blewitt, G., & Klein, E. C. (2014). A geodetic plate motion and Global Strain Rate Model. Geochemistry, Geophysics, Geosystems, 15(10), 3849-3889.

Larson, K. M., Bürgmann, R., Bilham, R., & Freymueller, J. T. (1999). Kinematics of the India-Eurasia collision zone from GPS measurements. Journal of Geophysical Research: Solid Earth, 104(B1), 1077-1093.

Liu, L., Ji, L., & Yang, X. (2014). Present-day crustal deformation around Kalpin block, Xinjiang, China, observed by InSAR. Geodesy and Geodynamics, 5(3), 23-28.

Loveless, J. P., & Meade, B. J. (2011). Partitioning of localized and diffuse deformation in the Tibetan Plateau from joint inversions of geologic and geodetic observations. Earth and Planetary Science Letters, 303(1-2), 11-24.

Metzger, S., Ischuk, A., Deng, Z., Ratschbacher, L., Perry, M., Kufner, S. K., ... & Moreno, M. (2020). Dense GNSS profiles across the northwestern tip of the India‐Asia collision zone: Triggered slip and westward flow of the Peter the First Range, Pamir, into the Tajik Depression. Tectonics, 39(2), e2019TC005797.

Metzger, S., Gągała, Ł., Ratschbacher, L., Lazecký, M., Maghsoudi, Y., & Schurr, B. (2021). Tajik depression and Greater Pamir neotectonics from InSAR rate maps. Journal of Geophysical Research: Solid Earth, 126(12).

Mohadjer, S., Bendick, R., Ischuk, A., Kuzikov, S., Kostuk, A., Saydullaev, U., ... & Zubovich, A. V. (2010). Partitioning of India‐Eurasia convergence in the Pamir‐Hindu Kush from GPS measurements. Geophysical Research Letters, 37(4).

Nishidai, T., & Berry, J. L. (1990). Structure and hydrocarbon potential of the Tarim Basin (NW China) from satellite imagery. Journal of Petroleum Geology, 13(1), 35-58. 

Pan, Z., He, J., & Li, J. (2018). Contemporary crustal deformation within the pamir plateau constrained by geodetic observations and focal mechanism solutions. Pure and Applied Geophysics, 175(10), 3463-3484.

Pan, Y., Chen, R., Yi, S., Wang, W., Ding, H., Shen, W., & Chen, L. (2019). Contemporary mountain‐building of the Tianshan and its relevance to geodynamics constrained by integrating GPS and GRACE measurements. Journal of Geophysical Research: Solid Earth, 124(11), 12171-12188.

Perry, M., Kakar, N., Ischuk, A., Metzger, S., Bendick, R., Molnar, P., & Mohadjer, S. (2019). Little geodetic evidence for localized Indian subduction in the Pamir‐Hindu Kush of Central Asia. Geophysical Research Letters, 46(1), 109-118.

Qiao, X., Yu, P., Nie, Z., Li, J., Wang, X., Kuzikov, S. I., ... & Yang, S. (2017). The crustal deformation revealed by GPS and InSAR in the northwest corner of the Tarim Basin, northwestern China. Pure and Applied Geophysics, 174(3), 1405-1423.

Reigber, C., Michel, G. W., Galas, R., Angermann, D., Klotz, J., Chen, J. Y., ... & Ishanov, M. C. (2001). New space geodetic constraints on the distribution of deformation in Central Asia. Earth and Planetary Science Letters, 191(1-2), 157-165.

Sangha, S., Peltzer, G., Zhang, A., Meng, L., Liang, C., Lundgren, P., & Fielding, E. (2017). Fault geometry of 2015, Mw7. 2 Murghab, Tajikistan earthquake controls rupture propagation: Insights from InSAR and seismological data. Earth and Planetary Science Letters, 462, 132-141.

Shen, Z.-K., Wang, M., Li, Y., Jackson, D. D., Yin, A., Dong, D., & Fang, P. (2001). Crustal deformation along the Altyn Tagh fault system, western China, from GPS. Journal of Geophysical Research: Solid Earth, 106(B12), 30607-30621.

Sun, J., Shen, Z.-K., Li, T., & Chen, J. (2016). Thrust faulting and 3D ground deformation of the 3 July 2015 Mw 6.4 Pishan, China earthquake from Sentinel-1A radar interferometry. Tectonophysics, 683, 77-85.

Teshebaeva, K., Sudhaus, H., Echtler, H., Schurr, B., & Roessner, S. (2014). Strain partitioning at the eastern Pamir-Alai revealed through SAR data analysis of the 2008 Nura earthquake. Geophysical Journal International, 198(2), 760-774.

Thatcher, W. (2007). Microplate model for the present-day deformation of Tibet. Journal of Geophysical Research, 112(B1).

Wang, M., & Shen, Z. K. (2020). Present‐Day Crustal Deformation of Continental China Derived From GPS and Its Tectonic Implications. Journal of Geophysical Research: Solid Earth, 125(2).

Yu, P., Qiao, X., Xiong, W., Chen, W., Nie, Z., Wang, D., . . . Li, J. (2020). Source model for the Mw 6.0 earthquake in Jiashi, China on 19 January 2020 from Sentinel-1A InSAR data. Earth, Planets and Space, 72(1).

Zheng, G., Wang, H., Wright, T. J., Lou, Y., Zhang, R., Zhang, W., . . . Wei, N. (2017). Crustal Deformation in the India-Eurasia Collision Zone From 25 Years of GPS Measurements. Journal of Geophysical Research: Solid Earth, 122(11), 9290-9312.

Zhou, Y., He, J., Oimahmadov, I., Gadoev, M., Pan, Z., Wang, W., . . . Rajabov, N. (2016). Present-day crustal motion around the Pamir Plateau from GPS measurements. Gondwana Research, 35, 144-154.

Zubovich, A., Schöne, T., Metzger, S., Mosienko, O., Mukhamediev, S., Sharshebaev, A., & Zech, C. (2016). Tectonic interaction between the Pamir and Tien Shan observed by GPS. Tectonics, 35(2), 283-292.

Zubovich, A. V., Wang, X.-q., Scherba, Y. G., Schelochkov, G. G., Reilinger, R., Reigber, C., . . . Beisenbaev, R. T. (2010). GPS velocity field for the Tien Shan and surrounding regions. Tectonics, 29(6), n/a-n/a.

代成龙, 张玲, 梁诗明, 张克亮, 熊小慧, & 甘卫军. (2021). 中亚塔拉斯-费尔干纳断裂现今的走滑速率及其分段变化特征——基于GPS观测的深究. 地震地质, 43(02), 263-279. https://www.dzdz.ac.cn/CN/10.3969/j.issn.0253-4967.2021.02.001

荆燕, 张世中, 熊玉珍, 李宏, 刘凤秋, 孙起伟, . . . 陈葛天. (2007). 柯坪断裂东段现今微动态运动监测与研究. 高校地质学报(01), 89-95. https://geology.nju.edu.cn/CN/Y2007/V13/I1/89

李杰, 王琪, 王晓强, 帕尔哈提, 刘代芹, 朱治国, & 蒋靖祥. (2012). 南天山-帕米尔现代地壳形变特征与应变场分布. 大地测量与地球动力学, 32(01), 1-4+9.http://www.jgg09.com/CN/Y2012/V32/I1/1

潘家伟,李海兵,孙知明,裴军令,司家亮,Laurie Barrier... & 张丽军.(2010).塔里木盆地中南部麻扎塔格逆冲—褶皱带变形特征及其意义. 地质科学(04),1038-1056. 塔里木盆地中南部麻扎塔格逆冲-褶皱带变形特征及其意义 (dzkx.org)

潘正洋,何建坤 & 卢双疆.(2013).帕米尔高原现代地壳运动首期GPS观测及处理. 地球科学与环境学报(01),103-110. 帕米尔高原现代地壳运动首期GPS观测及处理-《地球科学与环境学报》 (chd.edu.cn)

乔学军, 杜瑞林, 华晓伟, 王晓强, & 王琪. (2000). 新疆帕米尔东北侧地区现今地壳运动的gps监测研究. 中国地震, 16(004), 342-351. 新疆帕米尔东北侧地区现今地壳运动的GPS监测研究--《中国地震》2000年04期 (cnki.com.cn)

乔学军,王琪,杨少敏 & 李杰.(2014).2008年新疆乌恰M_w6.7地震震源机制与形变特征的InSAR研究. 地球物理学报(06),1805-1813. 2008年新疆乌恰Mw6.7地震震源机制与形变特征的InSAR研究 (geophy.cn)

冉勇康,杨晓平,徐锡伟,程建武 & 陈立春.(2006).西南天山柯坪推覆构造东段晚第四纪变形样式与缩短速率. 地震地质(02),179-193. https://www.dzdz.ac.cn/CN/

沈军,赵瑞斌,李军,D.Burbank,K.Share.(2001).塔里木盆地西北缘河流阶地变形测量与地壳缩短速率. 科学通报(04),334-338.

汪新,Aurelia Hubert-Ferrari,John Suppe.(2001).晚更新世以来南天山阿克苏地区地壳缩短率. 地质科学(02),195-202. 晚更新世以来南天山阿克苏地区地壳缩短率 (dzkx.org)

王琪,丁国瑜,乔学军,王晓强,游新兆.(2000).天山现今地壳快速缩短与南北地块的相对运动. 科学通报(14),1543-1547.

王琪,张培震,马宗晋.(2002).中国大陆现今构造变形GPS观测数据与速度场. 地学前缘(02),415-429. http://dx.chinadoi.cn/10.3321/j.issn:1005-2321.2002.02.021

王清晨,张仲培,林伟.(2003).库车盆地-天山边界的晚第三纪断层活动性质与应力状态. 科学通报(24),2553-2559.

王胜利,卢华复,印栋豪.(2002).《塔里木盆地西北缘河流阶地变形测量与地壳缩短速率》讨论. 科学通报(10),793-794.

伍秀芳,汪新,杨树锋,陈宁华.(2003).利用平衡剖面技术与磁性地层学估算地壳缩短速率——以帕米尔—西昆仑前陆褶皱带为例. 地学前缘(01),170. http://dx.chinadoi.cn/10.3321/j.issn:1005-2321.2003.01.040

杨庚,钱祥麟,李茂松,张明山,张志诚,郭召杰.(1996).塔里木北缘库车盆地冲断构造平衡地质剖面研究. 地球科学(03). 塔里木北缘库车盆地冲断构造平衡地质剖面研究 (wanfangdata.com.cn)

杨少敏,李杰 & 王琪.(2008).GPS研究天山现今变形与断层活动. 中国科学(D辑:地球科学)(07),872-880. GPS研究天山现今变形与断层活动 (sciengine.com)

杨晓平,冉勇康,宋方敏,徐锡伟,程建武,闵伟... & 陈立春.(2006).西南天山柯坪逆冲推覆构造带的地壳缩短分析. 地震地质(02),194-204. 西南天山柯坪逆冲推覆构造带的地壳缩短分析 (dzdz.ac.cn)

杨晓平,邓起东,张培震 & 徐锡伟.(2008).天山山前主要推覆构造区的地壳缩短. 地震地质(01),111-131. https://www.dzdz.ac.cn/CN/Y2008/V30/I1/111

张培震,王琪,马宗晋.(2002).青藏高原现今构造变形特征与GPS速度场. 地学前缘(02),442-450. http://dx.chinadoi.cn/10.3321/j.issn:1005-2321.2002.02.023

张培震,王琪,马宗晋.(2002).中国大陆现今构造运动的GPS速度场与活动地块. 地学前缘(02),430-441. http://dx.chinadoi.cn/10.3321/j.issn:1005-2321.2002.02.022

张培震,王敏,甘卫军,邓起东.(2003).GPS观测的活动断裂滑动速率及其对现今大陆动力作用的制约. 地学前缘(S1),81-92. http://dx.chinadoi.cn/10.3321/j.issn:1005-2321.2003.z1.014

张培震,沈正康,王敏,甘卫军.(2004).青藏高原及周边现今构造变形的运动学. 地震地质(03),367-377. https://www.dzdz.ac.cn/CN/Y2004/V26/I3/367

郑荣章,徐锡伟,王峰,李建平,计凤桔.(2005).阿尔金构造系晚更新世中晚期以来的逆冲活动. 地震地质(03),361-373.https://www.dzdz.ac.cn/CN/Y2005/V27/I3/361  

周在征,裴军令,李建锋,刘锋,盛美 & 赵越.(2016).帕米尔东北缘晚新生代旋转运动新证据. 地球物理学报(02),633-642.帕米尔东北缘晚新生代旋转运动新证据 (geophy.cn)

Li, J., Yao, Y., Li, R., Yusan, S., Li, G., Freymueller, J. T., & Wang, Q. Present‐Day Strike‐Slip Faulting and Thrusting of the Kepingtage Fold‐and‐Thrust Belt in Southern Tianshan: Constraints from GPS Observations. Geophysical Research Letters, e2022GL099105. 文章链接:https://agupubs.onlinelibrary.wiley.com/doi/full/10.1029/2022GL099105. 附件:Table_ S1.pdf

Jay, C. N., Flesch, L. M., & Bendick, R. O. (2017). Kinematics and dynamics of the Pamir, Central Asia: Quantifying surface deformation and force balance in an intracontinental subduction zone. Journal of Geophysical Research: Solid Earth, 122(6), 4741-4762.

Jay, C. N., Flesch, L. M., & Bendick, R. O. (2018). Kinematics and dynamics of the Pamir, central Asia: Quantifying the roles of continental subduction in force balance. Journal of Geophysical Research: Solid Earth, 123(9), 8161-8179.